Title :
An analog implementation to improve load transient response of PFC pre-regulators
Author :
Cheung, Martin K H ; Chow, Martin H L ; Tse, Chi K.
Author_Institution :
Hong Kong Polytech. Univ., Hong Kong
fDate :
Sept. 30 2007-Oct. 4 2007
Abstract :
This paper presents an analog implementation to improve the load transient response of PFC pre-regulators. By means of a notch filter inserted between the output-voltage sensing network of the pre-regulator and the voltage control loop of the pre-regulator control circuitry, the bandwidth of the voltage control loop is greatly expanded without introducing extra input current harmonics into the pre-regulators. This approach uses operational amplifiers with R-C networks to realize the notch filter, therefore it can be implemented into the existing pre-regulators with minor modification. The notch filter can be applied in both continuous-conduction-mode (CCM) pre-regulators and discontinuous-conduction-mode (DCM) pre-regulators. Furthermore the size of the output capacitor of the pre-regulators can be reduced due to the expanded bandwidth of the voltage control loop. The improved load transient response of the analog notch filter is observed experimentally. A laboratory prototype of a 100 W DCM flyback pre-regulator has been built to illustrate the benefits of this cost-effective solution.
Keywords :
notch filters; operational amplifiers; power factor correction; power harmonic filters; transient response; voltage control; DCM flyback preregulator; PFC preregulators; R-C networks; analog implementation; analog notch filter; continuous-conduction-mode preregulator; discontinuous-conduction-mode preregulator; input current harmonics; load transient response; operational amplifiers; voltage control loop; Bandwidth; Capacitors; Circuits; Frequency; Load flow; Operational amplifiers; Power harmonic filters; Sliding mode control; Transient response; Voltage control;
Conference_Titel :
Telecommunications Energy Conference, 2007. INTELEC 2007. 29th International
Conference_Location :
Rome
Print_ISBN :
978-1-4244-1627-1
Electronic_ISBN :
978-1-4244-1628-8
DOI :
10.1109/INTLEC.2007.4448900